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7 encoder signal output – Yaskawa Sigma II Series SGMVH User Manual

Page 226

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8.5 Operating Using Speed Control with Analog Reference

8

Operation

8-45

8.5.7 Encoder Signal Output

Encoder feedback pulses processed inside the SERVOPACK can be output externally.

The following signals are added when using an absolute encoder.

* SG (CN1-1, 2): Connect to 0 V on the host controller.

If using the SERVOPACK’s phase-C pulse output for a zero point return, rotate the servomotor twice or
more before starting a zero point return. If the configuration prevents the servomotor from rotating the ser-
vomotor or more, perform a zero point return at a motor speed of 600 min

-1

or below. If the motor speed is

faster than 600 min

-1

, the phase-C pulse output may not be output correctly.

1 Dividing

The dividing means that the divider converts data into the number of pulses based on the pulses of the encoder installed on
the servomotor, and outputs it. The setting unit is the number of pulses/revolution.

Type

Signal

Name

Connector

Pin Number

Name

Output

PAO

CN1-33

Encoder output phase A

/PAO

CN1-34

Encoder output phase /A

Output

PBO

CN1-35

Encoder output phase B

/PBO

CN1-36

Encoder output phase /B

Output

PCO

CN1-19

Encoder output phase C (zero-point pulse)

/PCO

CN1-20

Encoder output phase /C (zero-point pulse)

* Even in reverse rotation mode (Pn000.0 = 1), the dividing

1

output phase form is the same as that for the standard setting

(Pn000.0 = 0).

„ Output Phase Form

PG

SERVOPACK

CN2

CN1

Encoder

Host controller

These outputs explained here.

Phase A (PAO)

Phase B (PBO)

Phase C (PCO)

Serial data

Frequency
dividing
circuit

*

Note: The width of the zero-point pulse varies

depending on the setting of the dividing ratio
(Pn201). The width of zero-point pulse and
phase A are identical.

Phase A

Phase B

Phase C

90˚

t

Phase A

Phase B

Phase C

90˚

t

Forward rotation (phase B leads by 90˚) Reverse rotation (phase A leads by 90˚

Type

Signal

Name

Connector

Pin Number

Name

Input

SEN

CN1-4

SEN Signal Input

SG

CN1-2

Signal Ground

BAT (+)

CN1-21

Battery (+)

BAT (-)

CN1-22

Battery (-)

Output

SG

CN1-1

Signal Ground

IMPORTANT

TERMS